用并联电容器降低配电网损耗的案例研究

S. Saini, M. Sharma, Bhavesh Vyas, Manoj Gupta
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引用次数: 5

摘要

本文对斋浦尔市11kV配电网进行了研究,并在11kV电压水平上布置并联电容器。在目前的情况下,公用事业公司管理配电网的扩展,而不规划并联电容器。本文通过对斋浦尔市配电网无并联电容器组运行情况进行建模,分析了该市配电网的配电损耗。设计了260母线网络模型,利用Mi-power软件,根据潮流研究计算了恒功率负荷的无功需求。该模型在设计时安装了电容,实时计算现有系统的无功功率需求。采用更新后的系统潮流参数进行了对比研究。在试验系统中,研究了电容器组对电网线路、变压器、变电站功率因数和系统负载的影响。详细介绍了年度成本和节能的总体财务分析。最后,通过实例分析提出了电容组的最佳利用率建议,并给出了模拟摆动母线电压变化的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A case study for loss reduction in distribution networks using shunt capacitors
The Paper presents study of 11 kV distribution network of Jaipur city, with shunt capacitor placement at 11kV voltage level. In the current scenario utilities are managing the expansion of distribution network without planning the shunt capacitors. This paper provides an analysis of distribution losses in Jaipur city by modeling the present scenario of distribution network operating without shunt capacitor banks. The model of 260 bus network is designed and reactive power requirement for constant power load are calculated from load flow studies by using Mi-power Software. The proposed model is designed with capacitor installation, calculating the reactive power requirements of real time existing system. Comparative studies have been carried with updated system parameters for power flow. The effect of capacitors on network lines, transformers, Substation power factor & system loadings have been researched both with & without Capacitor Bank over the Test system. An overall financial analysis detailing annual cost & energy saving is also presented. Lastly capacity utilization factor suggesting for optimal utilization of capacitor banks with case studies, are followed by results with simulated changes in swing bus voltage have been addressed.
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